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| CFD血行動態× | 順運動学× | 逆動力学× | |
|---|---|---|---|
| 分野 | バイオメカニクス | バイオメカニクス | バイオメカニクス |
| 系統 | Process / pipeline | Process / pipeline | Process / pipeline |
| 提唱年≠ | 2002 | 1986 | 1990 |
| 提唱者≠ | David Steinman | John Craig | David Winter |
| 種類≠ | Multi-physics finite element simulation | Computational geometric pipeline | Computational analysis pipeline |
| 原典≠ | Steinman, D. A., Vinh, B., Ethier, C. R., Ojha, M., Cobbold, R. S., & Johnston, K. W. (2002). A numerical simulation of flow in a two-dimensional end-to-side anastomosis model. Journal of Biomechanical Engineering, 115(1), 112-118. link ↗ | Craig, J. J. (2005). Introduction to Robotics: Mechanics and Control (3rd ed.). Pearson. link ↗ | Winter, D. A. (1990). Biomechanics and Motor Control of Human Movement. Wiley-Interscience. link ↗ |
| 別名≠ | Cardiovascular CFD, Blood flow simulation, Hemodynamic simulation | FK, Kinematic chain, Anatomical chain | Inverse problem, Biomechanical inverse dynamics |
| 関連 | 3 | 3 | 3 |
| 概要≠ | Computational fluid dynamics (CFD) for hemodynamics solves the Navier-Stokes equations to simulate blood flow in realistic vascular geometries. Pioneered by researchers such as David Steinman, CFD hemodynamics reveals complex flow patterns, wall shear stress distributions, and hemodynamic factors implicated in atherosclerosis, aneurysm rupture, and device-induced thrombosis. | Forward kinematics is the calculation of the position and orientation of a distal body segment (such as the hand) based on the joint angles of proximal segments. Originally formalized in robotics by John Craig and adapted to biomechanics, it allows practitioners to predict endpoint location from known joint configuration. | Inverse dynamics is a biomechanical analysis technique that estimates the forces and moments acting on joints during movement by working backward from observed motion and ground reaction forces. Introduced by David Winter in the early 1990s, it is fundamental to understanding how muscles and joints generate and control human motion. |
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